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Dramatic Structuring of Liquid Water using Polarized Microwave, Radiofrequency Radiation, and Crystal-induced Epitaxy

机译:使用偏光微波,射频辐射和晶体诱导的外延液体水的戏剧性结构

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Polarized radiation and epitaxy are presented here as key vectors for structuring water. Raman spectroscopy reveals that liquid water treated with 2.45 GHz polarized microwave and 13.56 MHz radiofrequency radiation undergoes dramatic structural changes, including striking reduction in the main 0-H stretching modes which relax to normal on the order of several hours, while other structural changes persist for days or weeks. Water containing even very small amounts of NaC1 in the presence of a polarized radiofrequency field, causes an unpredicted electrodeless dissociation of water, splitting the O-H bond to generate nascent hydrogen and oxygen, which can be burned, and/or which can spontaneously ignite. For epitaxial structuring, water properties, including surface tension and viscosity, have been altered using macroscopic, large, ultra-hard crystalline phases: corundum, diamond and quartz. This led to the development of a silica xerogel that is used in industrial applications and in the health industry.
机译:这里呈现极化辐射和外延作为构造水的关键载体。拉曼光谱揭示用2.45GHz偏振光微波和13.56MHz射频辐射处理的液体水经历了显着的结构变化,包括主要的0-H拉伸模式下降,在几个小时的阶数放松至正常,而其他结构变化持续存在天或几周。在偏振射线区域存在下含有甚至非常少量NaC1的水导致水的不受预测的无电极解离,将O-H键分裂以产生爆发的氢气和氧,其可以燃烧,和/或可以自发地点燃。对于外延结构,使用宏观,大型超硬晶相:刚玉,金刚石和石英,改变了水性,包括表面张力和粘度,包括表面张力和粘度。这导致了在工业应用和卫生行业中使用的二氧化硅Xerogel的开发。

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